Plane-Strain Extrusion of a Green Type Porous Plastic Material through a Wedge-Shaped Die

Q3 Materials Science
G. Sevastyanov
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Abstract

, Gurson criterion, plane-strain condition, wedge-shaped die. This paper presents the solutions for the plane-strain extrusion of porous material. We consider the problem of a stationary plastic flow through a wedge shaped die. We neglect friction between the die and the deformed material since it is rather a negative effect and should be avoided in manufacturing. The elliptic Green type yield condition and its piecewise-linear approximation are adopted for this problem. In the last case, we obtain analytical solution that links extrusion pressure and area reduction to the initial and final density of the porous material. For elliptic Green yield condition the problem reduced to nonlinear ODE that integrated numerically. The results are compared with known solution for Gurson model. The extrusion pressure predicted by the piecewise-linear model is lower than what obtained by the elliptic Green model. In turn, the pressure predicted by elliptic Green model is lower than the pressure obtained in the frame of Gurson model. At low values of area reduction, all three models predict approximately the same extrusion pressure. With a small initial porosity of the material, the Gurson model gives results that are close to the elliptic Green model, and with a large initial porosity, to the piece-wise-linear Green model. © PNRPU
绿色多孔塑料材料在楔形模具中的平面应变挤压
,Gurson准则,平面应变条件,楔形模具。本文给出了多孔材料平面应变挤压的求解方法。我们考虑了静止的塑料流通过楔形模具的问题。我们忽略了模具和变形材料之间的摩擦,因为这是一种负面影响,在制造过程中应该避免。该问题采用了椭圆格林型屈服条件及其分段线性近似。在最后一种情况下,我们获得了将挤出压力和面积减少与多孔材料的初始和最终密度联系起来的解析解。对于椭圆型Green屈服条件,将问题归结为数值积分的非线性常微分方程。将结果与Gurson模型的已知解进行了比较。分段线性模型预测的挤压压力低于椭圆格林模型预测的压力。反过来,椭圆格林模型预测的压力低于在Gurson模型框架中获得的压力。在面积减小值较低时,所有三个模型预测的挤出压力大致相同。在材料初始孔隙率较小的情况下,Gurson模型给出的结果接近于椭圆Green模型,而在初始孔隙率较大的情况下则接近于分段线性Green模型。©PNRPU
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
PNRPU Mechanics Bulletin
PNRPU Mechanics Bulletin Materials Science-Materials Science (miscellaneous)
CiteScore
1.10
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0.00%
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0
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